Electrode potential
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In electrochemistry, electrode potential (also called reversible potential difference or reversible potential difference of an electrode, and abbreviated E) is the potential difference of a half-reaction which occurs across a reversible cell made up of any electrode and a standard hydrogen electrode.
The potential (in volts) of any given cell is dependent on the two half-reactions used. Different half-reactions give different potential readings. For example, on connection, the below half-reactions give a reading of 0.59 V (1.36 V − 0.77 V):
- (1) Fe3+ + e− ⇌ Fe2+ E
o= +0.77 V (See Table of standard electrode potentials) - (2) Cl2 + 2e− ⇌ 2Cl− E
o= +1.36 V
- (1) Fe3+ + e− ⇌ Fe2+
- (3) I2 + 2e− ⇌ 2I−
- (1) Fe3+ + e− ⇌ Fe2+
- (4) 2H+ + 2e− ⇌ H2
Once the standard electrode potentials of two substances are known, it is possible to predict the direction electrons will travel from one substance to another, as well as the potential measured between them. The more positive half-reaction will always accept electrons, whilst the less positive (not necessarily negative) reaction will donate electrons. The voltage measured between the half-reactions is equal to the difference in standard electrode potentials between the substances. For example given our original reaction:
- (1) Fe3+ + e− ⇌ Fe2+ E
o= +0.77 V - (2) Cl2 + 2e− ⇌ 2Cl− E
o= +1.36 V
- (1) Fe2+ ⇌ Fe3+ + e−
- (2) Cl2 + 2e− ⇌ 2Cl−
- (5) Cl2 + 2e− + 2Fe2+ ⇌ 2Cl− + 2Fe3+ + 2e−
- (6) Cl2 + 2Fe2+ ⇌ 2Cl− + 2Fe3+
The use of standard electrode potentials is not restricted to electrochemical cells—the same predictions we made are equally true of reactions occurring naturally.
See also
- Nernst equation
- Electrochemical cell
- Electrochemical potential
- Concentration cell
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